Title :
A study on mobility load balancing methods in IVC and RVC cooperative systems
Author :
Niwa, Y. ; Fujii, M. ; Ito, A. ; Watanabe, Y. ; Hatano, H.
Author_Institution :
Dept. of Inf. Syst. Sci., Utsunomiya Univ., Utsunomiya, Japan
Abstract :
Association of Radio Industries and Businesses (ARIB) has standardized ARIB STD-T109 for IVC (Inter Vehicle Communications) and RVC (Road to Vehicle Communications) as applications of Intelligent Transport Systems in 700 MHz band. In ARIB STD-T109, IVC and RVC share one channel by employing time division duplex. It is possible to avoid frame collisions between IVC and RVC by this scheme. Moreover, in IVC period, it adopts CSMA/CA (Carrier Sense Multiple Access with Collision Avoidance) for the communication among the vehicles. However, this system suffers from a disadvantage of the increase in the frame collision probability because many vehicles may simultaneously start the IVC transmission procedure at the beginning of IVC period. In this paper, we propose a new mobility load balancing method in order to reduce the collision probability at the beginning of IVC period. Our proposed method randomly distributes the start time of the transmission in IVC period. By computer simulations, we evaluate the proposed method in comparison with the conventional one.
Keywords :
carrier sense multiple access; cooperative communication; intelligent transportation systems; mobile radio; mobility management (mobile radio); resource allocation; time division multiplexing; wireless channels; ARIB STD-T109; CSMA-CA; IVC cooperative systems; IVC transmission procedure; RVC cooperative systems; association of radio industries and businesses; carrier sense multiple access with collision avoidance; channel; collision frame collision probability reduction; frequency 700 MHz; intelligent transport systems; inter vehicle communications; mobility load balancing methods; road to vehicle communications; time division duplex; Computer simulation; Cooperative systems; Educational institutions; Industries; Load management; Multiaccess communication; Vehicles;
Conference_Titel :
Consumer Electronics (GCCE), 2014 IEEE 3rd Global Conference on
Conference_Location :
Tokyo
DOI :
10.1109/GCCE.2014.7031133